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    LA FÍSICA EN EL CAMBIO DE MILENIO. La física de la autoorganización y de los sistemas ordenados. Las nuevas líneas de investigación más relevantes de los últimos 50 años.

    S/175.00 S/160.00

    272 páginas

    El libro que el lector tiene en sus manos es el primer tomo de la obra «LA FÍSICA en el cambio de milenio»

    En el primer capítulo se estudian los principales conceptos de una nueva ciencia interdisciplinaria: LA FÍSICA DE LOS SISTEMAS ABIERTOS. Las bases para el surgimiento de la física de sistemas abiertos fueron preparadas por los trabajos de eminentes investigadores del siglo XIX, entre los cuales podemos mencionar al físico Ludwig Boltzmann, los matemáticos Henri Poincaré y Alexandr Liapunov, y el biólogo Charles Darwin.

    El segundo capítulo está dedicado a LA FÍSICA DE LOS CUERPOS SÓLIDOS. Las investigaciones en esta rama de la ciencia ocupan un lugar especial en la física, ya que es la vía principal que nos permite obtener información sobre la estructura de la materia (tanto biótica como abiótica) y sobre los materiales que se utilizan en numerosas tecnologías modernas.

    El tercer capítulo contiene temas relacionados con LAS NUEVAS Y PROMETEDORAS APLICACIONES DE LOS SEMICONDUCTORES a los más diversos campos de la ciencia y la técnica.

    Esta obra está dirigida a todas las personas interesadas en los problemas de la física que se desarrolla en la actualidad.

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    Introduction to Modern Statistical Physics: A Set of Lectures

    S/195.00 S/170.00

    416 páginas

    The aim of this book is to add certain new topics to the material of the famous textbook “Statistical physics” by L.D.Landau and E.M.Lifshitz.

    High-temperature corrections to the thermodynamic potential are calculated by employing ring diagrams and also by expanding in powers of the gas parameter.

    The universality hypothesis gives a possibility to calculate critical exponents in the framework of perturbation theory. Summation of the most strongly diverging diagrams yields parquet equations. Solving these equations, the singular specific heat and magnetic susceptibility are determined in the (4–epsilon)-dimensional space.

    The gradient-invariant microscopic equations which describe a superconducting state are derived. Using these equations, the Ginsburg—Landau equations together with the microscopic boundary conditions are obtained. The critical magnetic field of forming superconducting nuclei is calculated.

    The tunneling effects between two superconductors (the Josephson effect) and also between a superconductor and a normal metal are studied. The microscopic description of the Meissner effect, calculation of the spin susceptibility in a superconductor (the Knight shift) are given.

    The book is intended for researchers, graduate and undergraduate students studying the theory of condensed matter.

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    Introduction to Modern Kinetic Theory: A Set of Lectures

    S/230.00 S/200.00

    520 páginas

    The proposed Lectures supplement the course by Landau and Lifshitz with some new sections, without which it is impossible to solve the problems in modern theoretical physics.

    This book consists of Lectures which the author has been reading in Moscow Institute of Physical Technology since 2003. The first six Lectures present the traditional university course of physical kinetics. The transport equations for ideal Fermi and Bose gases are considered. In other Lectures non-ideal systems are considered on the basis of two-component Green’s functions. Non-equilibrium properties of metals, dielectrics, and superconductors are studied in the framework of this method. The non-stationary Ginzburg—Landau equation is derived. The theory of stationary tunneling phenomena and the non-stationary Josephson effect are considered.

    The linear and non-linear theories of noise in electric circuits are studied. The equations which allow to determine low frequency asymptotic of non-linear four-current correlator (the so called $1/f^{\alpha}$ noise) are obtained.

    The book is intended for researches, graduate and undergraduate students studying physical kinetics.

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    Introducción a la teoría cuántica de los campos de gauge

    S/200.00 S/180.00

    En este libro de los prominentes físicos soviéticos se expone, por una parte, el método general de la cuantificación de las teorías invariantes de gauge en términos de la integral funcional, y, por otra, su renormalización. Se analizan también la formulación de las teorías de gauge reticulares y los métodos explícitamente covariantes de cuantificación (cuantificación BRS).

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    Introducción a la sinergética: Oscilaciones y ondas

    S/150.00

    304 páginas

    La ciencia moderna de las oscilaciones y ondas se presenta en el presente libro mediante efectos y fenómenos de la medicina, química, ecología, hidrodinámica, electrónica, economía, ciencias sociales, etcétera. El objetivo de este trabajo es mostrar que conceptos tales como oscilaciones, ondas, inestabilidad, no linealidad, caos y estructuras permiten comprender la unicidad de la concepción moderna del mundo. En el libro se muestra la forma que adoptan las ideas relacionadas con estos conceptos en diferentes campos de la ciencia.

    Esta obra está dirigida a los alumnos de enseñanza media de grupos especializados en física y matemáticas, así como a los estudiantes de los primeros años de las especialidades universitarias de ciencias naturales. Este libro está basado en las lecciones impartidas por el autor en la Universidad Estatal de Sarátov a los estudiantes de humanidades, lo que hace que su nivel sea accesible a un amplio círculo de lectores interesados en tener una toma de contacto con la sinergética.

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    Introducción a la electrodinámica de los medios materiales

    S/155.00 S/140.00

    240 páginas

    Este libro incluye el material que constituye la base del curso de lecciones de electrodinámica macroscópica. El contenido y el modo de exponer el material corresponden al programa vigente del curso general «Electrodinámica» y a las lecciones que el autor imparte a los estudiantes del tercer año de la Facultad de Física de la Universidad Estatal «M. V. Lomonósov» de Moscú.

    Esta obra está dirigida a los estudiantes de las facultades de física de los centros de educación superior, así como también a profesores e investigadores.

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    Internal gravity waves: theory and applications

    S/300.00 S/250.00

    304 páginas

    The monography is devoted to the research of the processes of disturbance and propagation of the internal gravity waves within the vertically stratified horizontally non-uniform and non-stationary mediums, to development of the asymptotic methods being by the generalization of the space-time ray-tracing method (the method of the geometrical optics), to research of the critical phenomena at generation and propagations of the internal gravity waves, and also to development of non-spectral methods of the analysis of the full-scale measurements of the internal gravity waves in the ocean.

    The monography is intended for the specialists in the field of hydrodynamics, oceanology and the mathematical modeling of geophysical processes. The bibliography 409, figures 60

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    Handbook of Integrable Hamiltonian Systems

    S/175.00 S/150.00

    This book provides a comprehensive exposition of completely integrable, partially integrable and superintegrable Hamiltonian systems in a general setting of invariant submanifolds which need not be compact. In particular, this is the case of non-autonomous integrable Hamiltonian systems and integrable systems with time-dependent parameters. The fundamental Liouville—Minuer—Arnold, Poincar\’e—Lyapunov—Nekhoroshev, and Mishchenko—Fomenko theorems and their generalizations are presented in details. Global action-angle coordinate systems, including the Kepler one, are analyzed. Geometric quantization of integrable Hamiltonian systems with respect to action-angle variables is developed, and classical and quantum Berry phase phenomenon in completely integrable systems is described.

    This book addresses to a wide audience of theoreticians and mathematicians of undergraduate, post-graduate and researcher levels. It aims to be a guide to advanced geometric methods in classical and quantum Hamiltonian mechanics. For the convenience of the reader, a number of relevant mathematical topics are compiled in Appendixes.

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    Gravitation and Quantum Mechanics

    S/25.00

    In the brochure the solution of a very old problem, which is known as the Mach principle, is stated. A new model of space-time where the values of the speed of light and Plank constant depend on the gravitational potential created by the whole mass of the Universe at a given point in space is proposed. In the new model the existence of inertial reference systems is directly connected with all masses of the Universe.

    The principally new idea of Chaos outside the limits of the Universe’s gravitational field, the state of space-time with degenerated (uncertain) laws of motion, is introduced.

    The physical sense of Einstein’s well-known formula: E = mc2 is revealed. Theoretical proof to the fact of equality of the inert and gravitational masses is given. Within the limits of quantum mechanics a mechanism of the Newtonian law of gravitation is explained.

    ———–

    Our space may be compared to the screen of a monitor. Lines separated by a fraction of a millimeter are distinguished on a monitor of high class. At the same time such lines smear into one line on a bad monitor. Our space is a “monitor” of highest class, but it is still not ideal. Trajectories of particles’ motion smear into one line at small distances (of an order of the size of an atom). In consequence of this an electron (which is an indivisible particle) can pass through two near-placed holes at the same time!

    The quality of a monitor is determined by the work of focusing systems, which direct electrons beams to a screen. In space stars and galaxies filling our Universe play the part of such systems. Influencing elementary particles with their masses stars and galaxies limit the uncertainty of the particles’ motion. Thanks to this, photons, neutrons and electrons do not smear within space as on a screen of a bad monitor.

    In the new theory the effect of gravitation is a pure quantum effect: a big mass limits the uncertainty in a particle’s motion and, as a result, attracts it.

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    Geometrization of physical quantities

    S/85.00

    208 páginas

    Fundamental and derived physical quantities are geometrized on the basis of the hypothesis of global stationary state of our Universe. A new (L) system of physical quantities based on a single quantity (length) is created and developed. Numerical values of seven base units as well as fundamental physical constants are calculated in the L system.

    We give a geometric interpretation of fundamental notions of macro- and micro-mechanics and explain a large number of physical phenomena of the macro- and micro-worlds, for example, the principle of uncertainty, the microwave background radiation, the black and white holes, the red shift of galactic objects, the Big Bang, the emergence of matter. Also, we estimate the speed of gravitation of the systems “electron-electron”, “proton-proton”, and others.

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    Generalized functions in mathematical physics

    S/110.00

    364 páginas

    The present monograph is an expanded version of a course of lectures that the author has been delivering to students postgraduates, and associates of the Moscow Physics and Technology Institute and Steklov Mtahematical Institute.

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    Fundamentals of Physics

    S/125.00

    The book covers a wide range of topics, starting from the basic notions of particle physics and fields physics and gradually evolving to study macrophysics. Except of traditional issues the author considers subjects such as physical hydrodynamics, plasma physics, and astrophysics.

    The author widely applies the role of symmetry in physical laws, which allows to establish fundamental links in nature.

    The book is intended for high school students and graduates with a deep interest in physics, as well as for all those who wish to acquire a deeper knowledge of physical phenomena.

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